Complete the (aq) dissolution equations for each solute, identify the solution as electrolyte or not (EL: Y ? N), and use the molarity of solute formula given to find the total molarity of all solute c.p’s present in that solution. Follow the example in the first row: Solute Balanced c.p’s in (aq) state EL: Y ? N Molarity of solute formula Total molarity of all solute c.p’s in solution Li2SO4(s) 2Li+(aq) + SO42–(aq) Y 0.90 M 0.9 + 2 × 0.9 = 2.7 M Cs2CO3(s) 3 M KOH(s) 2.3 M Cl2(g) 0.03 M HF(g) 0.82 M
Complete the (aq) dissolution equations for each solute, identify the solution as electrolyte or not (EL: Y ? N), and use the molarity of solute formula given to find the total molarity of all solute c.p’s present in that solution. Follow the example in the first row: Solute Balanced c.p’s in (aq) state EL: Y ? N Molarity of solute formula Total molarity of all solute c.p’s in solution Li2SO4(s) 2Li+(aq) + SO42–(aq) Y 0.90 M 0.9 + 2 × 0.9 = 2.7 M Cs2CO3(s) 3 M KOH(s) 2.3 M Cl2(g) 0.03 M HF(g) 0.82 M
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Complete the (aq) dissolution equations for each solute, identify the solution as electrolyte or not (EL: Y ? N), and use the molarity of solute formula given to find the total molarity of all solute c.p’s present in that solution. Follow the example in the first row:
Solute |
Balanced c.p’s in (aq) state |
EL: Y ? N |
Molarity of solute formula |
Total molarity of all solute c.p’s in solution |
Li2SO4(s) |
2Li+(aq) + SO42–(aq) |
Y |
0.90 M |
0.9 + 2 × 0.9 = 2.7 M |
Cs2CO3(s) |
|
|
3 M |
|
KOH(s) |
|
|
2.3 M |
|
Cl2(g) |
|
|
0.03 M |
|
HF(g) |
|
|
0.82 M |
|
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